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首页> 外文期刊>Protection of Metals and Physical Chemistry of Surfaces >Size Characteristics of the Surface Tension of One- and Two-Component Metal Melts
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Size Characteristics of the Surface Tension of One- and Two-Component Metal Melts

机译:一组和双组分金属熔体表面张力的尺寸特性

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摘要

A molecular theory based on the lattice gas model is employed to describe the surface tension of the vapor-liquid interfaces of one- and two-component metal melts. The surface tension of the melts are calculated in the quasi-chemical approximation of taking into account intermolecular interactions of the nearest neighbors. Parameters of the model are found from the experimental data for the bulk surface tension of the melts, which enables the calculation of the surface tensions of vapor-liquid interfaces of one- and two-component droplets with different sizes as a function of their radii. Estimates for the minimum size of small droplets of melts having the properties of a homogeneous phase inside them, which correspond to their thermodynamic stability, are obtained.
机译:基于晶格气模型的分子理论用于描述单组分金属熔体的蒸汽界面的表面张力。 熔体的表面张力在考虑到最近邻居的分子间相互作用的准化学近似下计算。 从熔体的散装表面张力的实验数据中发现了模型的参数,这使得能够计算具有不同尺寸的单组分液滴的蒸汽液体界面的表面张力,作为其半径的函数。 获得对应于它们的热力学稳定性的均匀相的均匀熔体的最小熔体的最小液滴的估计。

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